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Effect of Functionalization of Graphene Nanoplatelets on the Mechanical and Thermal Properties of Silicone Rubber Composites

机译:石墨烯纳米片的功能化对硅橡胶复合材料力学和热性能的影响

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This study investigated the effect of silane and surfactant treatments of graphene nanoplatelets (GnPs) on the mechanical and thermal properties of silicone rubber (SR) composites. GnPs were modified with aminopropyltriethoxysilane (APTES), vinyltrimethoxysilane (VTMS), and Triton X-100, and then the pristine GnPs and functionalized GnPs were individually incorporated into the SR. Compared with the pristine GnP/SR composite, the composites reinforced with modified GnP showed better tensile strength, elongation at break, and thermal conductivity properties due to better dispersion of modified GnPs and stronger interfacial interactions between the modified GnPs and matrix. The mechanical properties and thermal conductivity of the VTMS-GnP/SR composite were comparable to the properties of the Triton-GnP counterpart, but better than that of the APTES-GnP/SR composite. In addition, the VTMS-GnP/SR composite demonstrated the highest thermal stability and crystallization temperature among the four types of composites. The remarkable improvement of mechanical and thermal properties of the VTMS-GnP/SR composite was mainly due to the covalent linkage of VTMS-GnP with SR. The VTMS treatment was a more appropriate modification of GnP particles to improve the multifunctional properties of SR.
机译:这项研究调查了石墨烯纳米片(GnPs)的硅烷和表面活性剂处理对硅橡胶(SR)复合材料的机械和热性能的影响。用氨基丙基三乙氧基硅烷(APTES),乙烯基三甲氧基硅烷(VTMS)和Triton X-100修饰GnP,然后将原始的GnP和功能化的GnP分别掺入SR中。与原始GnP / SR复合材料相比,改性GnP增强的复合材料具有更好的拉伸强度,断裂伸长率和导热性,这是由于改性GnPs的分散性更好,并且改性GnPs与基​​体之间的界面相互作用更强。 VTMS-GnP / SR复合材料的机械性能和导热率与Triton-GnP对应材料的性能相当,但优于APTES-GnP / SR复合材料。此外,VTMS-GnP / SR复合材料在四种类型的复合材料中均表现出最高的热稳定性和结晶温度。 VTMS-GnP / SR复合材料的机械和热性能的显着改善主要归因于VTMS-GnP与SR的共价键。 VTMS处理是对GnP颗粒进行更适当的修饰,以改善SR的多功能性能。

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